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Solid-State Conversion Chemistry of Multicomponent Nanocrystals Cast in a Hollow Silica Nanosphere: Morphology-Controlled Syntheses of Hybrid Nanocrystals

机译:空心二氧化硅纳米球中铸造的多组分纳米晶体的固态转化化学:杂化纳米晶体的形貌控制合成

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摘要

During thermal transformation of multicomponent nanocrystals in a silica nanosphere, FeAuPd alloy nanocrystals migrate outward and thereby leave a cavity in the silica matrix. Oxidation then converts these nanocrystals back into phase-segregated hybrid nanocrystals, AuPd@Fe3O4, with various morphologies. The FeAuPd-to-AuPd@Fe3O4 transformation was cast by the in situ generated hollow silica mold. Therefore, the morphological parameters of the transformed AuPd@Fe3O4 are defined by the degree of migration of the FeAuPd in the hollow silica nanoshell. This hollow silica-cast nanocrystal conversion was studied to develop a solid state protocol that can be used to produce a range of hybrid nanocrystals and that allows for systematic and sophisticated control of the resulting morphologies.
机译:在二氧化硅纳米球中多组分纳米晶体的热转变过程中,FeAuPd合金纳米晶体向外迁移,从而在二氧化硅基质中留下空腔。然后,氧化将这些纳米晶体转换回具有各种形态的相分离杂化纳米晶体AuPd @ Fe3O4。 FeAuPd到AuPd @ Fe3O4的转化是通过原位生成的空心二氧化硅模具铸造的。因此,转化的AuPd @ Fe3O4的形貌参数由中空二氧化硅纳米壳中FeAuPd的迁移程度定义。研究了这种中空的二氧化硅浇铸纳米晶体转化,以开发出一种固态协议,该协议可用于生产一系列杂化纳米晶体,并且可以对所形成的形态进行系统和复杂的控制。

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